IRFS3107-7PPBF International Rectifier, IRFS3107-7PPBF Datasheet - Page 2

MOSFET N-CH 75V 240A D2PAK-7

IRFS3107-7PPBF

Manufacturer Part Number
IRFS3107-7PPBF
Description
MOSFET N-CH 75V 240A D2PAK-7
Manufacturer
International Rectifier
Series
HEXFET®r
Datasheet

Specifications of IRFS3107-7PPBF

Fet Type
MOSFET N-Channel, Metal Oxide
Fet Feature
Standard
Rds On (max) @ Id, Vgs
2.6 mOhm @ 160A, 10V
Drain To Source Voltage (vdss)
75V
Current - Continuous Drain (id) @ 25° C
240A
Vgs(th) (max) @ Id
4V @ 250µA
Gate Charge (qg) @ Vgs
240nC @ 10V
Input Capacitance (ciss) @ Vds
9200pF @ 50V
Power - Max
370W
Mounting Type
Surface Mount
Package / Case
D²Pak, TO-263 (6 leads + tab)
Transistor Polarity
N-Channel
Drain-source Breakdown Voltage
75 V
Gate-source Breakdown Voltage
20 V
Continuous Drain Current
260 A
Power Dissipation
370 W
Mounting Style
SMD/SMT
Gate Charge Qg
160 nC
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
IRFS3107-7PPBF
Manufacturer:
IR
Quantity:
20 000
∆V
Notes:

ƒ
Static @ T
V
R
V
I
I
R
Dynamic @ T
gfs
Q
Q
Q
Q
t
t
t
t
C
C
C
C
C
Diode Characteristics
I
I
V
t
Q
I
t
DSS
GSS
d(on)
r
d(off)
f
S
SM
rr
RRM
on
(BR)DSS
GS(th)
SD
DS(on)
G(int)
iss
oss
rss
oss
oss
g
gs
gd
sync
rr
above this value .
Repetitive rating; pulse width limited by max. junction
Limited by T
Pulse width ≤ 400µs; duty cycle ≤ 2%.
2
Symbol
Symbol
Symbol
temperature.
I
(BR)DSS
R
SD
G
eff. (ER) Effective Output Capacitance (Energy Related)h –––
eff. (TR) Effective Output Capacitance (Time Related)g
≤ 160A, di/dt ≤ 1420A/µs, V
= 25Ω, I
/∆T
J
AS
Jmax
J
Drain-to-Source Breakdown Voltage
Breakdown Voltage Temp. Coefficient
Static Drain-to-Source On-Resistance
Gate Threshold Voltage
Drain-to-Source Leakage Current
Gate-to-Source Forward Leakage
Gate-to-Source Reverse Leakage
Internal Gate Resistance
Forward Transconductance
Total Gate Charge
Gate-to-Source Charge
Gate-to-Drain ("Miller") Charge
Total Gate Charge Sync. (Q
Turn-On Delay Time
Rise Time
Turn-Off Delay Time
Fall Time
Input Capacitance
Output Capacitance
Reverse Transfer Capacitance
Continuous Source Current
(Body Diode)
Pulsed Source Current
(Body Diode) c
Diode Forward Voltage
Reverse Recovery Time
Reverse Recovery Charge
Reverse Recovery Current
Forward Turn-On Time
= 25°C (unless otherwise specified)
= 160A, V
, starting T
J
= 25°C (unless otherwise specified)
Parameter
GS
J
=10V. Part not recommended for use
= 25°C, L = 0.026mH
DD
≤ V
Parameter
Parameter
(BR)DSS
, T
g
J
- Q
≤ 175°C.
gd
)
Intrinsic turn-on time is negligible (turn-on is dominated by LS+LD)
ˆ
Min. Typ. Max. Units
Min. Typ. Max. Units
Min. Typ. Max. Units
––– 0.083 –––
–––
–––
–––
–––
–––
260
–––
–––
–––
–––
–––
–––
–––
–––
–––
–––
–––
–––
–––
–––
–––
–––
–––
–––
–––
–––
–––
2.0
75
mended footprint and soldering techniques refer to application note #AN-994.
C
When mounted on 1" square PCB (FR-4 or G-10 Material). For recom
C
as C
C
oss
θ
θJC
oss
oss
eff. (TR) is a fixed capacitance that gives the same charging time
oss
eff. (ER) is a fixed capacitance that gives the same energy as
while V
9200
1150
1500
–––
–––
–––
–––
–––
–––
–––
160
103
100
850
400
–––
–––
–––
110
160
2.1
2.1
3.8
38
57
17
80
64
52
63
while V
DS
1060
-100
–––
250
100
–––
–––
240
–––
–––
–––
–––
–––
–––
–––
–––
–––
–––
–––
–––
260
–––
–––
–––
–––
–––
2.6
4.0
1.3
20
is rising from 0 to 80% V
DS
is rising from 0 to 80% V
V/°C
mΩ
nC
µA
nA
nC
pF
ns
ns
V
V
S
A
V
A
V
Reference to 25°C, I
V
V
V
V
V
V
V
I
V
V
I
V
I
R
V
V
V
ƒ = 1.0MHz
V
V
MOSFET symbol
showing the
integral reverse
p-n junction diode.
T
T
T
T
T
T
D
D
D
J
J
J
J
J
J
GS
GS
DS
DS
DS
GS
GS
DS
DS
GS
DD
GS
GS
DS
GS
GS
G
= 160A
= 160A, V
= 160A
= 25°C, I
= 25°C
= 125°C
= 25°C
= 125°C
= 25°C
= 2.7Ω
= V
= 75V, V
= 75V, V
= 25V, I
= 38V
= 50V
= 0V, I
= 10V, I
= 20V
= -20V
= 10V f
= 49V
= 10V f
= 0V
= 0V, V
= 0V, V
GS
, I
DSS
D
S
D
DS
DS
D
D
DS
= 250µA
DSS
GS
GS
.
= 160A, V
= 250µA
= 160A
= 160A f
= 0V to 60V h
= 0V to 60V g
Conditions
Conditions
Conditions
=0V, V
= 0V
= 0V, T
.
V
I
di/dt = 100A/µs f
F
R
= 160A
D
= 64V,
GS
= 5mAc
J
GS
= 125°C
= 10V
= 0V f
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G
D
S

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